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Fluoropolymer Coated Condensing Heat Exchangers for Low-Grade Waste Heat Recovery

机译:含氟聚合物涂覆的冷凝热交换器,用于低级废热回收

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Low-grade waste heat from industrial processes usually has temperatures lower than ~232°C, and thus has low thermal and economic values. However, low-grade waste heat is abundant and its total work potential is huge. To effectively recover low-temperature waste heat, i.e. recover both the sensible and latent heats, the exhaust streams usually need to be cooled to temperatures below the water and acid dew points, which causes severe corrosion problems in the heat exchangers. In this research, a fluoropolymer-based composite coating was applied to heat exchangers made of inexpensive metals (e.g. stainless steel, aluminum, carbon steel, etc.) to protect the surfaces contacting the waste streams. Corrosion tests were conducted in 80% sulphuric acid at ambient and elevated temperatures for more than 1500 h, and no corrosion was detected. The composite material has much higher thermal conductivity than virgin fluoropolymer, and can be applied to both bare and finned heat exchangers. The composite coating can be continuously utilized at temperatures up to ~260°C. The coating also shows excellent adhesion strength to the substrate.
机译:来自工业过程的低级余热量通常具有低于〜232°C的温度,因此热和经济价值低。然而,低级废热丰富,其总工作潜力巨大。为了有效地回收低温废热,即恢复可显和潜热,通常需要冷却到水和酸露点以下的温度下,这导致热交换器中的严重腐蚀问题。在该研究中,将含氟聚合物的复合涂层涂覆到由廉价金属制成的热交换器(例如,不锈钢,铝,碳钢等),以保护接触废物流的表面。在环境温度下在80%硫酸中在80%硫酸中进行腐蚀试验,高温超过1500小时,并且没有检测到腐蚀。复合材料具有比原始含氟聚合物更高的导热率,并且可以施加到裸露和翅片的热交换器上。复合涂层可以在高达约260℃的温度下连续使用。涂层还显示出对基材的优异的粘合强度。

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